• DocumentCode
    1520565
  • Title

    Semiempirical Calibration of the Integral Equation Model for SAR Data in C-Band and Cross Polarization Using Radar Images and Field Measurements

  • Author

    Baghdadi, Nicolas ; Chaaya, Jad Abou ; Zribi, Mehrez

  • Author_Institution
    Centre d´´Etude du Machinisme Agricole du Genie Rural des Eaux et Forets, UMR TETIS, Montpellier, France
  • Volume
    8
  • Issue
    1
  • fYear
    2011
  • Firstpage
    14
  • Lastpage
    18
  • Abstract
    The estimation of surface soil parameters (moisture and roughness) from synthetic aperture radar (SAR) images requires the use of well-calibrated backscattering models. The objective of this letter is to extend the semiempirical calibration of the backscattering integral equation model (IEM) initially proposed by Baghdadi for HH and VV polarizations to HV polarization. The approach consisted in replacing the measured correlation length by a fitting/calibration parameter so that model simulations would closely agree with radar measurements. This calibration in C-band covers radar configurations with incidence angles between 24 and 45.8. Good agreement was found between the backscattering coefficient provided by the SAR and that simulated by the calibrated version of the IEM.
  • Keywords
    calibration; geophysical image processing; integral equations; moisture; radar imaging; soil; synthetic aperture radar; C-band; backscattering integral equation model; cross polarization; field measurement; moisture estimation; roughness estimation; semiempirical calibration; surface soil parameter estimation; synthetic aperture radar imaging; Backscatter; Calibration; Integral equations; Moisture; Polarization; Radar imaging; Radar measurements; Soil measurements; Surface soil; Synthetic aperture radar; Calibration; integral equation model (IEM); synthetic aperture radar (SAR) images;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2010.2050054
  • Filename
    5491062